The study, conducted by a multi-disciplinary team from the University of Adelaide, involved a protein called proliferating cell nuclear antigen (PCNA). PCNA’s donut-like shape lets DNA slide through its center, where it is then replicated.

As explained by project leader Dr. John Bruning, while PCNA is required for DNA replication, it’s overexpressed in 90 percent of all cancers. The team set out to find a way to target PCNA, thereby preventing cancer cells from multiplying.

Creating a Barrier to Cancer Cell Proliferation

Bruning’s team successfully created a drug-like molecule using a protein that naturally interacts with PCNA. They were also able to change the chemistry to keep it from degrading as it does in its natural form.

PCNA rarely mutates, making it less likely to develop resistance against the “designer molecule,” which has demonstrated greater effectiveness than previous forms of PCNA inhibitors with less chance of side effects.

According to Bruning, the use of a natural protein in the creation of the molecule allows for more precise targeting of PCNA. Bruning is hopeful that his team’s work will usher in the development of a whole new class of drugs.